转录因子 FOXA1 通过激活 TEX19 促进糖酵解和肺腺癌的增殖

IF 2.4 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Molecular Biotechnology Pub Date : 2024-08-01 Epub Date: 2023-08-22 DOI:10.1007/s12033-023-00848-2
Yanfei Zhang, Huichao Sheng, Yuan Fu, Lin Chen
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引用次数: 0

摘要

糖酵解是包括肺腺癌(LUAD)在内的多种癌症的共同特征。睾丸表达19(TEX19)与癌症进展相关。但它对 LUAD 的影响仍是一个未解之谜。我们的研究重点主要是调查 TEX19 在 LUAD 中的具体作用。我们首先从TCGA-LUAD中下载了mRNA数据,并进行了差异表达分析。利用 hTFtarget 数据库预测 mRNA 上游转录因子。然后,采用qRT-PCR技术检测TEX19和叉头框A1(FOXA1)的表达。采用 Western 印迹检测糖酵解相关蛋白的表达。我们还使用 CCK-8、集落形成和流式细胞术检测细胞活力、增殖和凋亡。我们引入了海马 XF 细胞外通量分析仪来分析细胞外酸化率(ECAR)和耗氧量(OCR)。检测试剂盒用于检测丙酮酸、乳酸、柠檬酸和苹果酸。TEX19在LUAD组织中高表达。实时定量 PCR(qRT-PCR)分析表明,与正常支气管上皮细胞 BEAS-2B 相比,TEX19 在 LUAD 细胞系中显著过表达。敲除TEX19可明显抑制细胞活性和增殖,促进细胞凋亡,TEX19在糖酵解途径中富集。同时,敲除 TEX19 会显著降低丙酮酸、乳酸、柠檬酸和苹果酸的含量。生物信息学分析、双荧光素酶报告实验和染色质免疫沉淀(ChIP)实验表明,FOXA1与TEX19结合。FOXA1 在 LUAD 中有较高的表达水平。拯救实验表明,FOXA1通过激活TEX19的表达,促进了LUAD细胞的糖酵解和增殖,并抑制了细胞的凋亡。综上所述,FOXA1通过激活TEX19促进了LUAD细胞的糖酵解和增殖。这一结果可为今后对LUAD的研究提供理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transcription Factor FOXA1 Facilitates Glycolysis and Proliferation of Lung Adenocarcinoma via Activation of TEX19.

Glycolysis is a shared feature in various cancers including lung adenocarcinoma (LUAD). Testis Expressed 19 (TEX19) is correlated with cancer progression. But its effect on LUAD remains an unanswered question. The focus of our study was primarily to investigate how TEX19 works exactly in LUAD. We first downloaded mRNA data from TCGA-LUAD and performed differential expression analysis. Then, we performed a Kaplan-Meier analysis to analyze the relationship between mRNA expression and patients' prognoses. hTFtarget database was utilized for the prediction of upstream transcription factors of mRNA. Next, qRT-PCR was employed for detecting TEX19 and Forkhead box A1 (FOXA1) expression. Western blot was adopted to detect the expression of glycolysis-related proteins. We also used CCK-8, colony formation, and flow cytometry assays to detect cell viability, proliferation, and apoptosis. Seahorse XF Extracellular Flux Analyzers were introduced to analyze extracellular acidification rate (ECAR) and oxygen consumption rate (OCR). Detection kits were used to detect pyruvate, lactate, citric acid, and malic acid. TEX19 was highly expressed in LUAD tissues. Real-time quantitative PCR (qRT-PCR) assay showed that TEX19 was significantly overexpressed in LUAD cell lines compared with normal bronchial epithelial cells BEAS-2B. Knockdown of TEX19 remarkably inhibited cell activity and proliferation, and promoted cell apoptosis, TEX19 was enriched in the glycolytic pathway. Meanwhile, the knockdown of TEX19 significantly hampered the contents of pyruvate, lactate, citric acid, and malic acid. The bioinformatics analysis, dual luciferase reporter experiment, and chromatin immunoprecipitation (ChIP) assay showed that FOXA1 was bound with TEX19. FOXA1 had a high expression level in LUAD. The rescue assay demonstrated that FOXA1, by activating TEX19 expression, enhanced glycolysis and proliferation and inhibited apoptosis of LUAD cells. In summary, FOXA1 promoted glycolysis and proliferation of LUAD cells by activating TEX19. This result can provide a theoretical basis for future research on LUAD.

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来源期刊
Molecular Biotechnology
Molecular Biotechnology 医学-生化与分子生物学
CiteScore
4.10
自引率
3.80%
发文量
165
审稿时长
6 months
期刊介绍: Molecular Biotechnology publishes original research papers on the application of molecular biology to both basic and applied research in the field of biotechnology. Particular areas of interest include the following: stability and expression of cloned gene products, cell transformation, gene cloning systems and the production of recombinant proteins, protein purification and analysis, transgenic species, developmental biology, mutation analysis, the applications of DNA fingerprinting, RNA interference, and PCR technology, microarray technology, proteomics, mass spectrometry, bioinformatics, plant molecular biology, microbial genetics, gene probes and the diagnosis of disease, pharmaceutical and health care products, therapeutic agents, vaccines, gene targeting, gene therapy, stem cell technology and tissue engineering, antisense technology, protein engineering and enzyme technology, monoclonal antibodies, glycobiology and glycomics, and agricultural biotechnology.
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